...
首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Genetic differentiation in the timing of budburst in Emphasis Type='Italic'>Fagus crenata/Emphasis> in relation to temperature and photoperiod
【24h】

Genetic differentiation in the timing of budburst in Emphasis Type='Italic'>Fagus crenata/Emphasis> in relation to temperature and photoperiod

机译:在&LTT中布解时的遗传分化。强调=“斜体”> FAGUS Crenata& /强调>关于温度和光周期

获取原文
获取原文并翻译 | 示例
           

摘要

Climate change is expected to influence plant productivity particularly through changes in the timing of budburst. Nonetheless, knowledge about the intraspecific variation of the timing of budburst and its relationship with climate is insufficient for most tree species. Based on the common garden experiments of Fagus crenata , we investigated the interrelationships between the day of budburst, cumulative degree-days (temperature sum), chilling duration, and photoperiod at the timing of budburst for the trees of different combinations of 11 sites of seed origin and seven experimental sites in Japan. We found that the relationship between the latitude of experimental sites and the timing of budburst differed for the trees of different latitudes of origins. The timing of budburst was earlier for the trees of more northern populations throughout the latitudes of experimental sites. Variation in the timing of budburst among the trees of different seed origins was smaller for more northern experimental sites. Such patterns were caused by directional changes in the relationships between temperature sum, chilling duration, and photoperiod among the trees of different origins: the asymptotes of the curvilinear relationship between chilling duration and temperature sum, chilling duration and photoperiod, and temperature sum and photoperiod, decreased for more northern populations. With the northward expansion of species distribution, the responses of budburst to climate probably changed genetically in such ways in this species. Our results suggest that intraspecific variations in the relationships between the timing of budburst and associated meteorological factors inevitably influence the overall pattern of the timing of budburst at the geographic scale, and the timing of budburst might deviate from predictions when intraspecific variations are not considered.
机译:预计气候变化将影响植物生产力,特别是通过布伯斯特时机的变化。尽管如此,关于布伯斯特时机的内部内部变化及其与气候关系的知识对于大多数树种而言不足。基于Fagus Crenata的共同园林实验,我们调查了Budburst,累积度天(温度和),冷却持续时间和光周期之间的相互关系,以便在Profburst的不同组合的种子树木的树木时代日本的起源和七个实验遗址。我们发现,实验网站的纬度与布伯斯特的时序之间的关系不同于不同纬度的起源。 Budburst的时机早些时候在整个实验遗址纬度地区的更多北方人口的树木。对于更多北方实验部位,不同种子起源树丛中的完全突破的变化较小。这种模式是由不同起源树木之间的温度,冷却持续时间和光周期之间的关系的定向变化引起的:冷却持续时间和温度和温度和光周期,冷却持续时间和光周期之间的曲线关系的渐近关系,为更多北方人口减少。随着物种分布的向北扩展,布伯斯特对气候的反应可能在这个物种中以这种方式遗传地改变。我们的研究结果表明,布伯斯特及相关气象因素时机与相关气象因素之间的关系的内部变化不可避免地影响布伯斯特在地理范围内的整体模式,并且在不考虑内部含义变异时,布伯斯特的时序可能会偏离预测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号